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p_n^{\uparrow}(t) = p_{nr}(0) + (\tau_n / \gamma_n) \cdot q^{\uparrow}_n(t) - \gamma_n^{-1} \cdot Q^{\uparrow}_n (t) + \gamma_n^{-1} \cdot \left[ \sum_m f_{nm} \ Q_m^{\downarrow}(t) + \sum_m g_{nm} \ Q_m^{\uparrow}(t) \right] |
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p_n^{\downarrow}(t) = p_{nr}(0) + (\tau_n / \gamma_n) \cdot q^{downparrow}_n(t) - \gamma_n^{-1} \cdot Q^{\downarrow}_n (t) + \gamma_n^{-1} \cdot
\left[ \sum_m f_{nm} \ Q_m^{\uparrow}(t) + \sum_m g_{nm} \ Q_m^{\downarrow}(t) \right] |
See Also
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Petroleum Industry / Upstream / Production / Subsurface Production / Field Study & Modelling / Production Analysis / Capacitance Resistance Model (CRM)
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